292 lines
		
	
	
		
			7.1 KiB
		
	
	
	
		
			C++
		
	
	
	
			
		
		
	
	
			292 lines
		
	
	
		
			7.1 KiB
		
	
	
	
		
			C++
		
	
	
	
//===-- tsan_go.cpp -------------------------------------------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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//
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// ThreadSanitizer runtime for Go language.
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//
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//===----------------------------------------------------------------------===//
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#include "tsan_rtl.h"
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#include "tsan_symbolize.h"
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#include "sanitizer_common/sanitizer_common.h"
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#include <stdlib.h>
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namespace __tsan {
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void InitializeInterceptors() {
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}
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void InitializeDynamicAnnotations() {
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}
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bool IsExpectedReport(uptr addr, uptr size) {
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  return false;
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}
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void *Alloc(uptr sz) { return InternalAlloc(sz); }
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void FreeImpl(void *p) { InternalFree(p); }
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// Callback into Go.
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static void (*go_runtime_cb)(uptr cmd, void *ctx);
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enum {
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  CallbackGetProc = 0,
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  CallbackSymbolizeCode = 1,
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  CallbackSymbolizeData = 2,
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};
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struct SymbolizeCodeContext {
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  uptr pc;
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  char *func;
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  char *file;
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  uptr line;
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  uptr off;
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  uptr res;
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};
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SymbolizedStack *SymbolizeCode(uptr addr) {
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  SymbolizedStack *first = SymbolizedStack::New(addr);
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  SymbolizedStack *s = first;
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  for (;;) {
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    SymbolizeCodeContext cbctx;
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    internal_memset(&cbctx, 0, sizeof(cbctx));
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    cbctx.pc = addr;
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    go_runtime_cb(CallbackSymbolizeCode, &cbctx);
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    if (cbctx.res == 0)
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      break;
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    AddressInfo &info = s->info;
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    info.module_offset = cbctx.off;
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    info.function = internal_strdup(cbctx.func ? cbctx.func : "??");
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    info.file = internal_strdup(cbctx.file ? cbctx.file : "-");
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    info.line = cbctx.line;
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    info.column = 0;
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    if (cbctx.pc == addr) // outermost (non-inlined) function
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      break;
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    addr = cbctx.pc;
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    // Allocate a stack entry for the parent of the inlined function.
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    SymbolizedStack *s2 = SymbolizedStack::New(addr);
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    s->next = s2;
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    s = s2;
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  }
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  return first;
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}
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struct SymbolizeDataContext {
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  uptr addr;
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  uptr heap;
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  uptr start;
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  uptr size;
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  char *name;
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  char *file;
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  uptr line;
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  uptr res;
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};
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ReportLocation *SymbolizeData(uptr addr) {
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  SymbolizeDataContext cbctx;
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  internal_memset(&cbctx, 0, sizeof(cbctx));
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  cbctx.addr = addr;
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  go_runtime_cb(CallbackSymbolizeData, &cbctx);
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  if (!cbctx.res)
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    return 0;
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  if (cbctx.heap) {
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    MBlock *b = ctx->metamap.GetBlock(cbctx.start);
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    if (!b)
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      return 0;
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    auto *loc = New<ReportLocation>();
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    loc->type = ReportLocationHeap;
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    loc->heap_chunk_start = cbctx.start;
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    loc->heap_chunk_size = b->siz;
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    loc->tid = b->tid;
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    loc->stack = SymbolizeStackId(b->stk);
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    return loc;
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  } else {
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    auto *loc = New<ReportLocation>();
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    loc->type = ReportLocationGlobal;
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    loc->global.name = internal_strdup(cbctx.name ? cbctx.name : "??");
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    loc->global.file = internal_strdup(cbctx.file ? cbctx.file : "??");
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    loc->global.line = cbctx.line;
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    loc->global.start = cbctx.start;
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    loc->global.size = cbctx.size;
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    return loc;
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  }
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}
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static ThreadState *main_thr;
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static bool inited;
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static Processor* get_cur_proc() {
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  if (UNLIKELY(!inited)) {
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    // Running Initialize().
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    // We have not yet returned the Processor to Go, so we cannot ask it back.
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    // Currently, Initialize() does not use the Processor, so return nullptr.
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    return nullptr;
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  }
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  Processor *proc;
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  go_runtime_cb(CallbackGetProc, &proc);
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  return proc;
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}
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Processor *ThreadState::proc() {
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  return get_cur_proc();
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}
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extern "C" {
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static ThreadState *AllocGoroutine() {
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  auto *thr = (ThreadState *)Alloc(sizeof(ThreadState));
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  internal_memset(thr, 0, sizeof(*thr));
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  return thr;
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}
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void __tsan_init(ThreadState **thrp, Processor **procp,
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                 void (*cb)(uptr cmd, void *cb)) {
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  go_runtime_cb = cb;
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  ThreadState *thr = AllocGoroutine();
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  main_thr = *thrp = thr;
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  Initialize(thr);
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  *procp = thr->proc1;
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  inited = true;
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}
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void __tsan_fini() {
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  // FIXME: Not necessary thread 0.
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  ThreadState *thr = main_thr;
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  int res = Finalize(thr);
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  exit(res);
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}
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void __tsan_map_shadow(uptr addr, uptr size) {
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  MapShadow(addr, size);
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}
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void __tsan_read(ThreadState *thr, void *addr, void *pc) {
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  MemoryAccess(thr, (uptr)pc, (uptr)addr, 1, kAccessRead);
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}
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void __tsan_read_pc(ThreadState *thr, void *addr, uptr callpc, uptr pc) {
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  if (callpc != 0)
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    FuncEntry(thr, callpc);
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  MemoryAccess(thr, (uptr)pc, (uptr)addr, 1, kAccessRead);
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  if (callpc != 0)
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    FuncExit(thr);
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}
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void __tsan_write(ThreadState *thr, void *addr, void *pc) {
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  MemoryAccess(thr, (uptr)pc, (uptr)addr, 1, kAccessWrite);
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}
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void __tsan_write_pc(ThreadState *thr, void *addr, uptr callpc, uptr pc) {
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  if (callpc != 0)
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    FuncEntry(thr, callpc);
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  MemoryAccess(thr, (uptr)pc, (uptr)addr, 1, kAccessWrite);
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  if (callpc != 0)
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    FuncExit(thr);
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}
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void __tsan_read_range(ThreadState *thr, void *addr, uptr size, uptr pc) {
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  MemoryAccessRange(thr, (uptr)pc, (uptr)addr, size, false);
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}
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void __tsan_write_range(ThreadState *thr, void *addr, uptr size, uptr pc) {
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  MemoryAccessRange(thr, (uptr)pc, (uptr)addr, size, true);
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}
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void __tsan_func_enter(ThreadState *thr, void *pc) {
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  FuncEntry(thr, (uptr)pc);
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}
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void __tsan_func_exit(ThreadState *thr) {
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  FuncExit(thr);
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}
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void __tsan_malloc(ThreadState *thr, uptr pc, uptr p, uptr sz) {
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  CHECK(inited);
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  if (thr && pc)
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    ctx->metamap.AllocBlock(thr, pc, p, sz);
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  MemoryResetRange(thr, pc, (uptr)p, sz);
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}
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void __tsan_free(uptr p, uptr sz) {
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  ctx->metamap.FreeRange(get_cur_proc(), p, sz);
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}
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void __tsan_go_start(ThreadState *parent, ThreadState **pthr, void *pc) {
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  ThreadState *thr = AllocGoroutine();
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  *pthr = thr;
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  Tid goid = ThreadCreate(parent, (uptr)pc, 0, true);
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  ThreadStart(thr, goid, 0, ThreadType::Regular);
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}
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void __tsan_go_end(ThreadState *thr) {
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  ThreadFinish(thr);
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  Free(thr);
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}
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void __tsan_proc_create(Processor **pproc) {
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  *pproc = ProcCreate();
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}
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void __tsan_proc_destroy(Processor *proc) {
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  ProcDestroy(proc);
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}
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void __tsan_acquire(ThreadState *thr, void *addr) {
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  Acquire(thr, 0, (uptr)addr);
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}
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void __tsan_release_acquire(ThreadState *thr, void *addr) {
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  ReleaseStoreAcquire(thr, 0, (uptr)addr);
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}
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void __tsan_release(ThreadState *thr, void *addr) {
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  ReleaseStore(thr, 0, (uptr)addr);
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}
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void __tsan_release_merge(ThreadState *thr, void *addr) {
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  Release(thr, 0, (uptr)addr);
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}
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void __tsan_finalizer_goroutine(ThreadState *thr) { AcquireGlobal(thr); }
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void __tsan_mutex_before_lock(ThreadState *thr, uptr addr, uptr write) {
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  if (write)
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    MutexPreLock(thr, 0, addr);
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  else
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    MutexPreReadLock(thr, 0, addr);
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}
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void __tsan_mutex_after_lock(ThreadState *thr, uptr addr, uptr write) {
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  if (write)
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    MutexPostLock(thr, 0, addr);
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  else
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    MutexPostReadLock(thr, 0, addr);
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}
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void __tsan_mutex_before_unlock(ThreadState *thr, uptr addr, uptr write) {
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  if (write)
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    MutexUnlock(thr, 0, addr);
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  else
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    MutexReadUnlock(thr, 0, addr);
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}
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void __tsan_go_ignore_sync_begin(ThreadState *thr) {
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  ThreadIgnoreSyncBegin(thr, 0);
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}
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void __tsan_go_ignore_sync_end(ThreadState *thr) { ThreadIgnoreSyncEnd(thr); }
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void __tsan_report_count(u64 *pn) {
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  Lock lock(&ctx->report_mtx);
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  *pn = ctx->nreported;
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}
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}  // extern "C"
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}  // namespace __tsan
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